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非标定波长调制吸收光谱气体测量研究

李宁 翁春生

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非标定波长调制吸收光谱气体测量研究

李宁, 翁春生

Calibration-free wavelength modulation absorption spectrum of gas

Li Ning, Weng Chun-Sheng
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  • 为消除可调谐激光调制吸收光谱气体测量技术对于标定过程的依赖,研究了二次谐波信号的非标定波长调制气体测量方法.通过对测量的二次谐波线型进行分析,给出相同工况下二次谐波模拟信号,并利用测量与模拟二次谐波信号进行线性拟合直接计算气体浓度.实验室内采用非标定波长调制气体测量方法,利用 6336.24 cm-1处特征吸收谱线对10 cm长气体吸收池内的CO2进行了测量.结果表明,非标定波长调制气体测量方法可适应各种不同条件,适合于现场气体在线测量.当调制系数在1.8—3.
    The calibration-free wavelength modulation absorption spectrum is studied based on the second harmonic (2f) signal to remove the calibration procedure for tunable diode laser absorption gas sensing. The simulated 2f signal is obtain from the analysis of peak and trough from measured 2f signal line shape. The gas concentration is calculated by the linear fitting of measured and simulated 2f signals. The experiment on CO2 detection is carried out at transition of 6336.24cm-1 in a 10 cm absorption cell. The results prove that the calibration-free wavelength modulation absorption spectrum is suited for on-site gas sensing at various conditions. The average absolute error of gas concentration is 0.67% at modulation index ranging from 1.8 to 3.2. With gas concentration and pressure varied, the average absolute errors of gas concentration are measured to be about 0.98% and 0.74%.
    • 基金项目: 国家自然科学青年科学基金(批准号:11002074),高等学校博士学科点专项科研基金(批准号:20093219110037),中国博士后科学基金(批准号:20100481147),江苏省博士后科研资助计划(批准号:0902094C)和南京理工大学自主科研专项计划(批准号:2010ZYTS092)资助的课题.
    [1]

    Wang F, Huang Q X, Li N, Yan J H, Chi Y, Cen K F 2007 Acta Phys. Sin. 56 3867 (in Chinese)[王 飞、黄群星、李 宁、严建华、池 涌、岑可法 2007 物理学报 56 3867]

    [2]

    Kan R F, Liu W Q, Zhang Y J, Liu J G, Dong F Z, Gao S H, Wang M, Chen J 2005 Acta Phys. Sin. 54 1927 (in Chinese)[阚瑞峰、刘文清、张玉钧、刘建国、董凤忠、高山虎、王 敏、陈 军 2005 物理学报 54 1927]

    [3]

    Kan R F, Dong F Z, Zhang Y J, Liu J G, Liu C, Wang M, Gao S H, Chen J 2005 Chin. Phys. 14 1904

    [4]

    Cassidy D T, Reid J 1982 Appl. Opt. 21 1185

    [5]

    Liu J T C, Jeffries J B, Hanson R K 2004 Appl. Phys. B 78 503

    [6]

    Li H J, Rieker G B, Liu X, Jeffries J B, Hanson R K 2006 Appl. Opt. 45 1053

    [7]

    Duffin K, McGettrick A J, Johnstone W, Stewart G, Moodie D G 2007 J. Lightwave Technol. 25 3114

    [8]

    Li N, Yan J H, Wang F, Chi Y, Cen K F 2008 Chinese J. Lasers. 35 1567 (in Chinese)[李 宁、严建华、王 飞、池 涌、岑可法 2008 中国激光 35 1567]

  • [1]

    Wang F, Huang Q X, Li N, Yan J H, Chi Y, Cen K F 2007 Acta Phys. Sin. 56 3867 (in Chinese)[王 飞、黄群星、李 宁、严建华、池 涌、岑可法 2007 物理学报 56 3867]

    [2]

    Kan R F, Liu W Q, Zhang Y J, Liu J G, Dong F Z, Gao S H, Wang M, Chen J 2005 Acta Phys. Sin. 54 1927 (in Chinese)[阚瑞峰、刘文清、张玉钧、刘建国、董凤忠、高山虎、王 敏、陈 军 2005 物理学报 54 1927]

    [3]

    Kan R F, Dong F Z, Zhang Y J, Liu J G, Liu C, Wang M, Gao S H, Chen J 2005 Chin. Phys. 14 1904

    [4]

    Cassidy D T, Reid J 1982 Appl. Opt. 21 1185

    [5]

    Liu J T C, Jeffries J B, Hanson R K 2004 Appl. Phys. B 78 503

    [6]

    Li H J, Rieker G B, Liu X, Jeffries J B, Hanson R K 2006 Appl. Opt. 45 1053

    [7]

    Duffin K, McGettrick A J, Johnstone W, Stewart G, Moodie D G 2007 J. Lightwave Technol. 25 3114

    [8]

    Li N, Yan J H, Wang F, Chi Y, Cen K F 2008 Chinese J. Lasers. 35 1567 (in Chinese)[李 宁、严建华、王 飞、池 涌、岑可法 2008 中国激光 35 1567]

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  • 被引次数: 0
出版历程
  • 收稿日期:  2011-01-11
  • 修回日期:  2011-03-23
  • 刊出日期:  2011-07-15

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